Next Article in Journal
Innovative Aircraft Propulsive Configurations: Technology Evaluation and Operations in the SIENA Project
Next Article in Special Issue
Preliminary Design of Regional Aircraft—Integration of a Fuel Cell-Electric Energy Network in SUAVE
Previous Article in Journal
A Review of Simulations and Machine Learning Approaches for Flow Separation Analysis
Previous Article in Special Issue
Mechanical and Thermal Contributions to the Damage Suffered by an Aeronautical Structure Subjected to an Intense and Sudden Electrical Discharge
 
 
Font Type:
Arial Georgia Verdana
Font Size:
Aa Aa Aa
Line Spacing:
Column Width:
Background:
Article

Certification Gap Analysis for Normal-Category and Large Hydrogen-Powered Airplanes

by
Joël Jézégou
1,*,
Alvaro Mauricio Almeida-Marino
1,
Gregory O’Sullivan
2,
Beatriz Jiménez Carrasco
3,
Robert André
3 and
Yves Gourinat
4
1
Fédération ENAC ISAE-SUPAERO ONERA, Université de Toulouse, 31400 Toulouse, France
2
Pipistrel Vertical Solutions, 5270 Ajdovščina, Slovenia
3
Airbus S.A.S, 31700 Blagnac, France
4
ICA, ISAE-SUPAERO, UT3, INSA Toulouse, IMT Mines Albi, CNRS, Université de Toulouse, 31400 Toulouse, France
*
Author to whom correspondence should be addressed.
Aerospace 2025, 12(3), 239; https://doi.org/10.3390/aerospace12030239
Submission received: 14 February 2025 / Revised: 12 March 2025 / Accepted: 12 March 2025 / Published: 14 March 2025

Abstract

The transition to hydrogen as an aviation fuel, as outlined in current decarbonization roadmaps, is expected to result in the entry into service of hydrogen-powered aircraft in 2035. To achieve this evolution, certification regulations are key enablers. Due to the disruptive nature of hydrogen aircraft technologies and their associated hazards, it is essential to assess the maturity of the existing regulatory framework for certification to ensure its availability when manufacturers apply for aircraft certification. This paper presents the work conducted under the Clean Aviation CONCERTO project to advance certification readiness by comprehensively identifying gaps in the current European regulations. Generic methodologies were developed for regulatory gap and risk analyses and applied to a hydrogen turbine aircraft with non-propulsive fuel cells as the APU. The gap analysis, conducted on certification specifications for large and normal-category airplanes as well as engines, confirmed the overall adequacy of many existing requirements. However, important gaps exist to appropriately address hydrogen hazards particularly concerning fire and explosion, hydrogen storage and fuel systems, crashworthiness, and occupant survivability. The paper concludes by identifying critical areas for certification and highlighting the need for complementary hydrogen phenomenology data, which are key to guiding future research and regulatory efforts for certification readiness maturation.
Keywords: aircraft certification; hydrogen aircraft; hydrogen safety; gap analysis; certification readiness level; CONCERTO aircraft certification; hydrogen aircraft; hydrogen safety; gap analysis; certification readiness level; CONCERTO

Share and Cite

MDPI and ACS Style

Jézégou, J.; Almeida-Marino, A.M.; O’Sullivan, G.; Carrasco, B.J.; André, R.; Gourinat, Y. Certification Gap Analysis for Normal-Category and Large Hydrogen-Powered Airplanes. Aerospace 2025, 12, 239. https://doi.org/10.3390/aerospace12030239

AMA Style

Jézégou J, Almeida-Marino AM, O’Sullivan G, Carrasco BJ, André R, Gourinat Y. Certification Gap Analysis for Normal-Category and Large Hydrogen-Powered Airplanes. Aerospace. 2025; 12(3):239. https://doi.org/10.3390/aerospace12030239

Chicago/Turabian Style

Jézégou, Joël, Alvaro Mauricio Almeida-Marino, Gregory O’Sullivan, Beatriz Jiménez Carrasco, Robert André, and Yves Gourinat. 2025. "Certification Gap Analysis for Normal-Category and Large Hydrogen-Powered Airplanes" Aerospace 12, no. 3: 239. https://doi.org/10.3390/aerospace12030239

APA Style

Jézégou, J., Almeida-Marino, A. M., O’Sullivan, G., Carrasco, B. J., André, R., & Gourinat, Y. (2025). Certification Gap Analysis for Normal-Category and Large Hydrogen-Powered Airplanes. Aerospace, 12(3), 239. https://doi.org/10.3390/aerospace12030239

Note that from the first issue of 2016, this journal uses article numbers instead of page numbers. See further details here.

Article Metrics

Back to TopTop